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materials discovered at high pressure and high temperature conditions (HPHT). We will perform theoretical simulations to answer several questions. Which alloys and compounds discovered in HPHT experiments
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printing) and development of experimental methodology and analysis for effective evaluation of advanced high-throughput experiments. More information about the Competence Center NEXT can be found here: https
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for effective evaluation of advanced high-throughput experiments. More information about the Competence Center NEXT can be found here: https://www.next.kth.se/ In this specific project, you will study hard, wear
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understanding and analyzing hard, refractory alloys for potential industrial applications. Static and dynamical (ab initio, DFT) simulations of the materials will allow you to explore high
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sector, sustainable manufacturing via additive manufacturing (3D printing) and development of experimental methodology and analysis for effective evaluation of advanced high-throughput experiments. Link
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of the materials will allow you to explore high-temperature thermodynamics and elasticity. The theoretical challenge is to develop a machine learned interatomic potential based approach in exploring the vibrational
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Starting Grant Project: Understanding material synthesis conditions and complexity at high pressure (UNMASCC-HP) in the Physics at Extreme Conditions Unit within the Theoretical Physics Division . The goal
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analysis for effective evaluation of advanced high-throughput experiments. Link for further information about the Competence Center NEXT: https://www.next.kth.se/ The specific project for this call concerns
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small, contribute to a better world. We look forward to receiving your application! We are looking for a PhD student in CVD growth of diffusion tight high temperature coatings on graphite. Your work
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your application! We are looking for a PhD student in CVD growth of diffusion tight high temperature coatings on graphite. Your work assignments Future electronic demands new materials, do you want